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急性缺氧对大鼠肺动脉平滑肌细胞电压门控钾通道电流的影响(英文) 被引量:1

Influence of acute hypoxia on current of voltage-gated potassium channel in pulmonary artery smooth muscle cells of rats
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摘要 目的:研究急性缺氧对大鼠肺动脉平滑肌细胞电压门控钾通道(Kv)电流的影响。方法:雄性SD大鼠20只随机分为常氧对照组和急性缺氧组(各10只)。急性缺氧组大鼠在低氧仓中缺氧停留8 h后进行实验。应用全细胞膜片钳技术记录肺动脉平滑肌细胞电压门控钾通道电流(IK)。结果:急性缺氧显著降低大鼠肺动脉平滑肌细胞的IK密度。在大鼠肺动脉平滑肌细胞静息膜电位-60 mV至-10mV时,急性缺氧降低大鼠肺动脉平滑肌细胞的IK密度不明显(P>0.05)。在0mV时,大鼠肺动脉平滑肌细胞的峰值IK密度显著下降[从(38.1±5.2)pA/pF→(9.82±2.1)pA/pF,P<0.05)],此后随着细胞静息膜电位的增加,平滑肌细胞的IK密度下降幅度逐渐增加(P<0.05);从+30 mV至+60 mV时,平滑肌细胞的IK密度下降幅度更大(P<0.01)。在+60 mV时,IK密度峰值从(135.4±16.5)pA/pF降到(73.1±10.6)pA/pF,降幅达(46.8±3.3)%。结论:急性缺氧可降低肺动脉平滑肌细胞Kv电流,导致肺血管缺氧性收缩。 Objective: To study influence of acute hypoxia on the current of voltage-gated potassium channel (Ik) in pulmonary artery smooth muscle cells (PASMC) of rats. Methods: A total of 20 male SD rats were randomly and e-qually divided into normoxic control group and acute hypoxia group. The rats in acute hypoxia group were kept in hypoxic chamber for 8 h before experiment. Whole cell patch-clamp technique was used to record Ik in PASMC. Re-ults: Acute hypoxia significantly decreased the Ik density in PASMC of rats. During -60mV to -10mV of resting membrane potential(RMP), acute hypoxia did not significantly decrease peak Ik density in PASMC of rats, P〉 0.05; At 0 mV, acute hypoxia significantly decreased the peak Ik density in PASMC [from(38.1 ± 5.2) pA / pF decreased to(9.82 ± 2.1) pA / pF , P〈0. 051, then along with RMP increase in PASMC, the decreasing amplitude of peak Ik density in PASMC gradually increased(P〈0.05) ; From + 30 mV to + 60 mV, the decreasing amplitude of peak IK density in PASMC further significantly increased(P(0.01); At + 60 mV the peak Ik density decreased from(38.1 ± 5.2) pA / pF to(9.82 ± 2.1) pA / pF , and the decreasing amplitude reached (46.8±3.3)%. Con- clusion:Acute hypoxia can decrease Kv current in PASMC of rats, leading to hypoxic pulmonary vasoconstriction.
出处 《心血管康复医学杂志》 CAS 2013年第5期435-439,共5页 Chinese Journal of Cardiovascular Rehabilitation Medicine
基金 湖北省自然科学基金(2004ABA191)~~
关键词 钾通道 电压门控 缺氧 肺动脉 Potassium channels, Voltage-gated Anoxia Pulmonary artery
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